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14篇 您的检索式:作者名="HE Xinghong"
    题名 作者 年代 出处 被引量
1Self-propagating High-temperature Synthesis, Microstructure and Mechanical Properties of TiC-TiB_2-Cu Composites显示文摘TiC-TiB_2-Cu composites 被与假热均衡说的紧迫的使用的 Ti, B_4C 和 Cu 粉末相结合的自我繁殖的 high-temperaturesynthesis 生产。Themicrostructure 和 composites 的机械性质被调查。X 光检查衍射(XRD ) 和最后的产品仅仅是 TiC, TiB_2 和 Cu,这分阶段执行的结果显示出的扫描电子显微镜学(SEM ) 。打的 TiB_2 谷物和球状或不规则的 TiC 谷物在综合产品的微观结构被发现。TiB_2 和 TiCparticles 的反应温度和谷物尺寸与增加 Cu 内容减少了。进 composites 的 Cu 的介绍导致了相对密度和弯曲力量的激烈的增加,并且最大的价值与 20 wt % 的增加被获得,当当 Cu 内容是 40 wt % 时,破裂坚韧是最好时。Chuncheng ZHU Xinghong ZHANG Xiaodong HE Qiang XU 2006Journal of Materials Science & Technology2006,22,1:5
2Electrical properties of ZrB 2 –SiC ceramics with potential for heating element applications显示文摘Rujie He Daining Fang Peng Wang Xinghong Zhang Rubing Zhang 2014Ceramics International2014,,:1
3Thermal shock behavior of porous ZrB 2 –SiC ceramics显示文摘Xinxin Jin Xinghong Zhang Jiecai Han Ping Hu Rujie He 2013Materials Science & Engineering A2013,,:1
4Combustion synthesis and densification of large- scale TiC-xNi cerrnets显示文摘Xinghong Zhang Xiaodong He Jiecai Han 2002Materials Letters2002,56,:1
5Ablation-resistance of combustion synthesized TiB2-Cu cermet显示文摘ZHANG Xinghong HAN Jiecai HE Xiaodong 2005Journal of the American Ceramic2005,88,1:1
6Combustion synthesis and densification of large scale TiC-xNi cermets 显示文摘Zhang Xinghong He Xiaodong Han Jiecai 2002Materials Letters2002,56,3:1
7Aqueous gelcasting of ZrB 2 –SiC ultra high temperature ceramics显示文摘Rujie He Xinghong Zhang Ping Hu Chen Liu Wenbo Han 2012Ceramics International2012,,7:1
8Single-cell RNA sequencing reveals classical monocytes are the major precursors of rat osteoclasts显示文摘To dissect which subset of bone marrow monocyte is the major precursor of osteoclast,3-month-old rat bone marrow was obtained for single-cell RNA sequencing.A total of 6091 cells were acquired for detailed analysis,with a median number of 1206 genes detected per cell and 17,959 genes detected in total.A total of 19 cell clusters were recognized,with the main lineages identified as B cells,Granulocytes,Monocytes,T cells,Erythrocytes and Macrophages.Monocytes were further divided into classical monocytes and non-classical monocytes.Compared with non-classical monocytes,classical monocytes highly expressed osteoclast differentiation related genes Mitf,Spi1,Fos and Csf1r.Additionally,biological processes of classical monocytes were related to osteoclast differentiation.qPCR revealed differentially expressed genes of classical monocytes played a role in osteoclast differentiation.In conclusion,classical monocytes were identified as the main precursors of osteoclasts in rats,and may contribute to osteoclast differentiation by regulating S100a4,S100a6,S100a10,Fn1,Vcan and Bcl2a1.The results of this study contribute to the understanding of the origin of osteoclasts and may provide potential biomarkers for early diagnosis of bone metabolic diseases,as well as molecular and cellular targets for clinical intervention in bone metabolic diseases.JIRUI WEN WENCHAO WU MIN TANG MINGYUE BAO XUELING HE XINGHONG YAO LIANG LI 2022BIOCELL2022,46,3:0
9Advanced ocean wave energy harvesting:current progress and future trends显示文摘With a transition towards clean and low-carbon renewable energy,against the backdrop of the fossil-energy crisis and rising pollution,ocean energy has been proposed as a significant possibility for mitigating climate change and energy shortages for its characteristics of clean,renewable,and abundant.The rapid development of energy harvesting technology has led to extensive applications of ocean wave energy,which,however,has faced certain challenges due to the low-frequency and unstable nature of ocean waves.This paper overviews the debut and development of ocean wave energy harvesting technology,and discusses the potential and application paradigm for energy harvesting in the“intelligent ocean.”We first describe for readers the mechanisms and applications of traditional wave energy converters,and then discuss current challenges in energy harvesting performance connected to the characteristics of ocean waves.Next,we summarize the progress in wave energy harvesting with a focus on advanced technologies(e.g.,data-driven design and optimization)and multifunctional energy materials(e.g.,triboelectric metamaterials),and finally propose recommendations for future development.Fang HE Yibei LIU Jiapeng PAN Xinghong YE Pengcheng JIAO 2023Journal of Zhejiang University-Science A(Applied Physics & Engineering)2023,24,2:0
10Nano-TiO_(2) coate d nee dle carbon fib er reinforced phenolic aerogel composite with low density, excellent heat-insulating and infrared radiation shielding performance显示文摘High-performance thermal protection materials(TPMs)for spacecraft are becoming current research hotspots.Lightweight polymer-based ablators are considered to be the most promising candidates for TPMs due to their excellent designability and versatility.In this study,a unique nano-TiO_(2) coated needled carbon fiber felt/phenolic resin aerogel composite(TiCF/PR)is reported.Wherein the anatase nano-TiO_(2) was in-situ coated on the surface of carbon fibers uniformly through the sol-gel and calcination method,then,the phenolic resin aerogel was in-situ synthesized in the nano-TiO_(2) coated needled carbon fiber felt(TiCF)preform through vacuum impregnation and solvothermal method.The as-prepared aerogel com-posite possesses a low density(0.30–0.32 g/cm^(3)),low thermal conductivity(0.034 and 0.312 W/(m K)in the z and xy directions),and excellent thermal stability with 13.86%residual weight at 1300℃ in air.It is worthwhile to note that the TiCF/PR composite exhibits excellent antioxidant ablation and infrared(IR)radiation shielding properties in a high-temperature heating environment.With an oxygen-acetylene blaze heating of 1.5 MW/m^(2) for 150 s,the linear ablation rates decreased by 13.4%,and the backside temperature reduced from 322.3 to 179.1℃ compared to that of the sample without nano-TiO_(2) coating.The experimental and theoretical analysis showed that the present TiCF/PR nanocomposite has competitive and potential application prospects in the field of future TPMs.Yiwu Pan Xiangyu Jin Hebing Wang He Huang Can Wu Xiaojie Yan Changqing Hong Xinghong Zhang 2023Journal of Materials Science & Technology2023,,21:0
11Underwater minirobots actuated by hybrid driving method显示文摘Underwater minirobots have attracted significant interest due to their value in complex application scenarios.Typical underwater minirobots are driven mainly by a soft or rigid actuator.However,soft actuation is currently facing challenges,including inadequate motional control accuracy and the lack of a continuous and steady driving force,while conventional rigid actuation has limited actuation efficiency,environmental adaptability,and motional flexibility,which severely limits the accomplishment of complicated underwater tasks.In this study,we developed underwater minirobots actuated by a hybrid driving method(HDM)that combines combustion-based actuators and propeller thrusters to achieve accurate,fast,and flexible underwater locomotion performance.Underwater experiments were conducted to investigate the kinematic performance of the minirobots with respect to the motion modes of rising,drifting,and hovering.Numerical models were used to investigate the kinematic characteristics of the minirobots,and theoretical models developed to unveil the mechanical principle that governs the driving process.Satisfactory agreement was obtained from comarisons of the experimental,numerical,and theoretical results.Finally,the HDM was compared with selected hybrid driving technologies in terms of acceleration and response time.The comparison showed that the minirobots based on HDM were generally superior in transient actuation ability and reliability.Xinghong YE Yang YANG Pengcheng JIAO Zhiguo HE Lingwei LI 2023Journal of Zhejiang University-Science A(Applied Physics & Engineering)2023,24,7:0
12A Review of the Application of Artificial Intelligence in Orthopedic Diseases显示文摘In recent years,Artificial Intelligence(AI)has revolutionized people’s lives.AI has long made breakthrough progress in the field of surgery.However,the research on the application of AI in orthopedics is still in the exploratory stage.The paper first introduces the background of AI and orthopedic diseases,addresses the shortcomings of traditional methods in the detection of fractures and orthopedic diseases,draws out the advantages of deep learning and machine learning in image detection,and reviews the latest results of deep learning and machine learning applied to orthopedic image detection in recent years,describing the contributions,strengths and weaknesses,and the direction of the future improvements that can be made in each study.Next,the paper also introduces the difficulties of traditional orthopedic surgery and the roles played by AI in preoperative,intraoperative,and postoperative orthopedic surgery,scientifically discussing the advantages and prospects of AI in orthopedic surgery.Finally,the article discusses the limitations of current research and technology in clinical applications,proposes solutions to the problems,and summarizes and outlines possible future research directions.The main objective of this review is to inform future research and development of AI in orthopedics.Xinlong Diao Xiao Wang Junkang Qin Qinmu Wu Zhiqin He Xinghong Fan 2024Computers, Materials & Continua2024,78,2:0
13Calculation of the Energy Spectra of Atom Rb in Strong Magnetic Fields显示文摘The energy spectra and oscillator strength of atom Rb in strong magnetic fields are calculated.The wavefunctions obtained by an improved potential model proposed by some of us are chosen as the zero-order ones.The results show that the diamagnetic term seems to affect substantially only high Rydberg states.And there is a maximum of oscillator strength in each n-manifold,which varies with n increased.LIU Lianjun ZHANG Zhehua GAO Daoneng CAO Yaohui HE Xinghong LI Baiwen 1993Chinese Physics Letters1993,10,7:0
14Cyclic biaxial tensile strain enhances osteogenic differentiation in rat bone marrow-derived mesenchymal stem cells via activating ERα-Wnt3a/β-catenin pathway显示文摘The present study was designed to investigate the role of estrogen receptorα(ERα)in biaxial tensile strain(BTS)regulated osteogenic differentiation of rat bone marrow-derived mesenchymal stem cells(rBMSCs).rBMSCs were derived fromrats and overexpressed ERα.The rBMSCs were subjected to BTS at 1Hz with a strain of 2%for 4 h per day,3 days,with or without ERαinhibitor ICI 182,780(ICI).Then,bone mineralization was performed by Alizarin Red Staining.The markers of osteogenic differentiation and downstream Wnt3a/β-catenin signaling were detected by western blotting.Results showed that BTS enhanced the osteogenic differentiation of rBMSCs,increased protein expression levels of alkaline phosphatase(ALP),runt-related transcription factor 2(Runx2),collagen type I(Col I)and osteocalcin(OCN),and it increased the protein expression levels of estrogen receptor(ER)α(ERα),Wnt3a,andβ-catenin.BTS The activated Wnt3a/β-catenin signaling pathway induced by BTS was abolished by ICI 182,780(ICI).In addition,overexpressing ERαin rBMSCs promoted the osteogenic differentiation by BTS.Taken together,BTS induced osteogenic differentiation of rBMSCs via the ERαand downstream canonical Wnt3a/β-catenin pathway.MIN TANG XUELING HE XINGHONG YAO JIRUI WEN MINGYUE BAO LIANG LI 2022BIOCELL2022,46,6:0
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